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  4. Distributed modeling and simulation of 300 mm fab intrabay automation systems using distributed agent oriented petri nets
 
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Distributed modeling and simulation of 300 mm fab intrabay automation systems using distributed agent oriented petri nets

Journal
Proceedings - IEEE International Conference on Robotics and Automation
Journal Volume
1
Pages
616-621
Date Issued
2003
Author(s)
Kuo C.-H.
Huang C.-S.
CHUNG-HSIEN KUO  
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0344444782&partnerID=40&md5=44a19542c2e8223fb20e77db25c19656
https://scholars.lib.ntu.edu.tw/handle/123456789/611644
Abstract
In a 300 mm IC foundry fab, the intrabay automation systems are more important than a 200 mm one. In general, the intrabay automation systems include the automated controls of the process tools, overhead hoist transports (OHTs), stockers, and rail shortcuts. These control systems are operated concurrently. They must be cooperated seamlessly to increase the system performance and to avoid deadlocks. In this paper, the behaviors of the intrabay automation systems are modeled using the distributed agent oriented Petri net (DAOPN). The fab intrabay DAOPN models are categorized into the new order generation, OHT vehicle dispatching, zone control, path decision, and tool processing models. Finally, the DAOPN is defined, and the models of the intrabay automation systems are illustrated. Consequently, a simple intrabay system with one stocker, five tool stations, one OHT loop, and two rail shortcuts are modeled and simulated using the proposed DAOPN. The simulation results are evaluated based upon the conditions of changing the number of OHT vehicles and the dispatching rules.
Subjects
Collision avoidance
Computer architecture
Computer simulation
Petri nets
Semiconductor device manufacture
Distributed agent oriented Petri net
Intrabay automation systems
Overhead hoist transports
Vehicle path decision
Automation
Type
conference paper

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